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首页> 外文期刊>Biomaterials >Developing mechanically robust, triazole-zwitterionic hydrogels to mitigate foreign body response (FBR) for islet encapsulation
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Developing mechanically robust, triazole-zwitterionic hydrogels to mitigate foreign body response (FBR) for islet encapsulation

机译:开发机械稳健的三唑 - 两性离子水凝胶,以减轻异物反应(FBR)对胰岛封装

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摘要

Zwitterionic hydrogels such as those based on polycarboxybetaine (PCB) or polysulfobetaine (PSB) have potential for various biomedical applications, due to their biocompatibility and low biofouling properties. However, the poor mechanical properties of zwitterionic hydrogels developed to date remain a challenge, severely limiting their practical uses. To improve the mechanical properties without compromising their zwitterionic feature or biocompatibility, we designed a new class of zwitterionic hydrogels by introducing triazole moieties into the hydrogel monomers that could form energy-dissipating pi-pi stacking. Compared to conventional zwitterionic hydrogels, the triazole-zwitterionic (TR-ZW) ones exhibited similarly excellent antifouling properties, but were much more mechanically robust with higher stretchability (250% tensile strain), better compression-resistance (89% compressive strain and 65% compression for at least 10 cycles without any crack) and better folding-resistance. In addition, upon subcutaneous implantation in mice, the TR-ZW hydrogels induced significantly lower foreign body responses (FBR) (i.e. less fibrosis and more blood vessel formation relative to a poly(2-hydroxyethyl methacrylate) hydrogel control). As an example of their potential applications, we showed the use of the TR-ZW hydrogels for islet encapsulation and transplantation and demonstrated diabetes correction up to similar to 1 month in mice in the convenient subcutaneous site.
机译:由于它们的生物相容性和低生物化特性,两性离子水凝胶如基于多基羧基脲(PCB)或多硫代妥(PCB)或多硫代虫(PSB)的潜力具有各种生物医学应用。然而,迄今为止发育的两性离子水凝胶的机械性能差仍然是一个挑战,严重限制了它们的实际用途。为了改善机械性能而不损害其两性离子特征或生物相容性,我们通过将三唑部分引入水凝胶单体中设计了一种新的两类两类两性水凝胶,其可以形成能量消散PI-PI堆叠。与传统的两性离子水凝胶相比,三唑 - 两性离子(Tr-Zw)呈现出类似的防污性能,但具有更高的拉伸性(拉伸菌株),更好的压缩性(89%的压缩菌株和65%的机械稳健。压缩至少10个循环而没有任何裂缝)和更好的折叠抗性。此外,在皮下植入小鼠时,Tr-Zw水凝胶诱导显着降低的异物反应(FBR)(即相对于聚(2-羟乙基甲基丙烯酸酯)水凝胶对照的较少纤维化和更多的血管形成)。作为其潜在应用的一个例子,我们表明使用Tr-Zw水凝胶进行胰岛包封和移植,并在方便皮下部位中显示出糖尿病校正至类似于1个月的小鼠。

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